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Adaptive constraint control for flexible manipulator systems modeled by partial differential equations with dead‐zone input

Xinyu Zhang, Li Tang, Yan‐Jun Liu

2021International Journal of Adaptive Control and Signal Processing12 citationsDOI

Abstract

Summary In this article, based on partial differential equations (PDEs), the flexible manipulator system with both dead‐zone input and state constraints is studied. The dynamic model of the flexible manipulator system is described by PDEs. The parameters of the dead‐zone input are unknown, and the state constraint problem is also considered. An adaptive approach is proposed to offset the effects caused by dead‐zone input. Thus, to guarantee that all states remain within their respective constraint regions, the boundary control law based on the barrier Lyapunov function is given, and an adaptive controller is designed. According to the Lyapunov analysis method, the control method is given to ensure that all signals of the closed‐loop system are bounded and all states satisfy the constraint conditions. Finally, simulation results show the effectiveness of the proposed control method in this article.

Topics & Concepts

Control theory (sociology)Dead zoneConstraint (computer-aided design)Partial differential equationLyapunov functionBounded functionBoundary (topology)Offset (computer science)Computer scienceAdaptive controlController (irrigation)Mathematical optimizationMathematicsControl (management)Nonlinear systemPhysicsGeologyArtificial intelligenceGeometryQuantum mechanicsProgramming languageAgronomyBiologyMathematical analysisOceanographyStability and Controllability of Differential EquationsAdaptive Control of Nonlinear SystemsDynamics and Control of Mechanical Systems
Adaptive constraint control for flexible manipulator systems modeled by partial differential equations with dead‐zone input | Litcius